Pradeep A V, Ghosh Sayak, Anil Kumar P S
Department of Physics, Indian Institute of Science, Bangalore 560012, India.
Rev Sci Instrum. 2017 Jan;88(1):013901. doi: 10.1063/1.4973419.
In recent times, quadratic magneto-optic Kerr effect (QMOKE) is emerging as an important experimental tool to investigate higher-order spin-orbit interactions in magnetic thin films and heterostructures. We have designed and constructed a simple, cost-effective QMOKE measurement system using permanent magnets. The permanent magnets are mounted on the inner surface of a cylindrical ferromagnetic yoke which can be rotated about its axis. Our system is sensitive to both the quadratic and linear MOKE signals. We use rotating field method to extract the QMOKE components in saturation. This system is capable of extracting the QMOKE signal from single crystals and thin film samples. Here we present the construction and working of the QMOKE measurement system using permanent magnets and report, for the first time, the QMOKE signal from FeO single crystal.
近年来,二次磁光克尔效应(QMOKE)正成为研究磁性薄膜和异质结构中高阶自旋轨道相互作用的重要实验工具。我们设计并构建了一种使用永久磁铁的简单且经济高效的QMOKE测量系统。永久磁铁安装在圆柱形铁磁轭的内表面,该铁磁轭可绕其轴旋转。我们的系统对二次和线性磁光克尔信号均敏感。我们使用旋转场方法在饱和状态下提取QMOKE分量。该系统能够从单晶和薄膜样品中提取QMOKE信号。在此,我们展示了使用永久磁铁的QMOKE测量系统的构造和工作原理,并首次报道了FeO单晶的QMOKE信号。